Sandbox Reserved 1068: Difference between revisions

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The presence of the [http://en.wikipedia.org/wiki/Magnesium_in_biology magnesium ion] induces <scene name='69/694235/Mg_coordination/1'>changes in the structure</scene> of the active site and in the substrate, as well as causes significant pKa shifts in some of the key residues involved in the catalytic activity . The coordination shell of the magnesium cation in the active site of MbtI is composed of two water molecules, Glu434, Glu294, and the two oxygen atoms of the C1 carboxylate group of chorismate <ref name= "8a">PMID:22307014</ref>. In the presence of the magnesium ion, the positively charged Lys295 is displaced from the active site and the negatively charged Glu297 is faced toward the active site. Magnesium cation also orients the C1 carboxylate group coplanar to the ring of chorismate, reducing the electron density on the C2 center and favoring nucleophilic attack.
The presence of the [http://en.wikipedia.org/wiki/Magnesium_in_biology magnesium ion] induces <scene name='69/694235/Mg_coordination/1'>changes in the structure</scene> of the active site and in the substrate, as well as causes significant pKa shifts in some of the key residues involved in the catalytic activity . The coordination shell of the magnesium cation in the active site of MbtI is composed of two water molecules, Glu434, Glu294, and the two oxygen atoms of the C1 carboxylate group of chorismate <ref name= "8a">PMID:22307014</ref>. In the presence of the magnesium ion, the positively charged Lys295 is displaced from the active site and the negatively charged Glu297 is faced toward the active site. Magnesium cation also orients the C1 carboxylate group coplanar to the ring of chorismate, reducing the electron density on the C2 center and favoring nucleophilic attack.


'''Isochorismate pyruvae lyase (IPL)'''
'''Isochorismate pyruvate lyase (IPL)'''


Isochorismate is converted to salicylate and pyruvate through abstraction of the C2 hydrogen followed by protonation of C9 atom and the breakage of the C3-O7 bond. Histidine residue (His334) was proposed to act as a base, abstracting the C2 proton of isochorismate through a second order elimination mechanism. However, recent studies have shown that this residue lies more than 13 A away from C2 atom and no other water molecules appear close enough to the C2 atom to act as a base. IPL reaction has been proposed to proceed through an intramolecular pericyclic mechanisms, involving a concerted hydrogen transfer from C2 to C9 and breakage of the C3-O7 bond.  
Isochorismate is converted to salicylate and pyruvate through abstraction of the C2 hydrogen followed by protonation of C9 atom and the breakage of the C3-O7 bond. Histidine residue (His334) was proposed to act as a base, abstracting the C2 proton of isochorismate through a second order elimination mechanism. However, recent studies have shown that this residue lies more than 13 A away from C2 atom and no other water molecules appear close enough to the C2 atom to act as a base. IPL reaction has been proposed to proceed through an intramolecular pericyclic mechanisms, involving a concerted hydrogen transfer from C2 to C9 and breakage of the C3-O7 bond.  
[[Image:ILP.png|500 px|center|thumb|Figure 3: Isochorismate pyruvate activity  <ref>PMID:22307014</ref>.]]


'''Isochorismate synthase (IS)'''
'''Isochorismate synthase (IS)'''

Revision as of 16:17, 25 April 2015

Mycobacterium tuberculosis salicylate synthase (Mbt1)

Structure of MbtI (3LOG)

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References


Student contributors

Stephanie Raynor Robin Gagnon

Similar Pages

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Related pdb files

3LOG